Goran Strbac | Carbon Energy | Distinguished Academic Leadership Award

Prof. Goran Strbac | Carbon Energy | Distinguished Academic Leadership Award

Prof. Goran Strbac | Carbon Energy – Professor at Imperial College London, United Kingdom

Professor Goran Strbac is an internationally recognized leader in energy systems engineering, currently serving as Professor of Energy Systems at Imperial College London. With more than 25 years of extensive experience, he specializes in developing innovative models for the operation, economics, and planning of integrated low-carbon energy systems. He has authored over 350 peer-reviewed publications and five books, with an impressive h-index of 87 and over 38,000 citations, reflecting the global influence of his research. Professor Strbac leads the Imperial College team in large-scale, cross-sectoral research efforts, contributing significantly to energy market design, energy security, distributed energy resources, and digitalization in energy systems. His work has been instrumental in informing governments, regulators, and industry stakeholders across Europe and beyond, positioning him as a cornerstone of the energy transition towards zero-carbon futures.

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Education📘

Although detailed academic credentials are not explicitly listed, Professor Strbac’s prominent position and long-standing academic leadership at Imperial College London are evidence of a strong academic foundation in electrical and energy systems engineering. His deep expertise and technical rigor in system modeling, infrastructure design, and regulatory economics suggest advanced education in power systems or a closely related discipline. The caliber of his contributions and leadership in global energy research further underscores a career built on substantial academic and technical excellence.

Experience📘

Professor Strbac has led and participated in a wide array of cutting-edge research projects funded by the UK Government, the European Commission, EPSRC, and global industry partners. He has held advisory and leadership positions in more than 20 expert panels, including the UK Government’s Independent Panel for Electricity Market Design, the European Technology & Innovation Platforms, and the Parliamentary Group for Energy Studies. He is also the Director of the Imperial-Tsinghua Research Centre on Intelligent Power and Energy Systems. His key responsibilities span technical and economic modeling, stakeholder engagement, and policy advising. He has served on panels that influence regulations and infrastructure investment strategies, making him a bridge between scientific research and national energy policymaking.

Research Interest📘

Professor Strbac’s research spans several high-impact domains within energy systems engineering. He focuses on whole-energy system integration, assessing the interactions between electricity, gas, hydrogen, transport, and heating systems. He is also deeply involved in the design of energy markets, business models for decentralized systems, and the application of artificial intelligence in zero-carbon infrastructures. His work evaluates the role of emerging technologies such as space-based solar power, hydrogen generation, vehicle-to-grid services, district heating, and solid oxide cells. A strong advocate for systems resilience and reliability, his recent efforts also include energy planning under multi-dimensional uncertainties, with a special emphasis on the economic value of flexibility in future energy systems.

Awards📘

Professor Strbac’s leadership and innovation have earned him appointments to some of the most prestigious scientific and governmental committees in the UK and Europe. These include his role as a Lead Author in the IPCC Working Group III and as a member of the UK Committee of CIRED, OFGEM’s RIIO-2 Challenge Group, and the European Energy Research Alliance. He was also a director of the UK Centre for Sustainable Electricity and Distributed Generation and has chaired numerous advisory boards. His thought leadership continues to shape international dialogues around sustainable energy transitions and infrastructure modernization.

Selected Publications 📘

“Impacts of Large Amounts of Wind Power on Design and Operation of Power Systems: Results of IEA Collaboration” – Wind Energy, 2011, cited by 556 articles 🔄
“Design and Operation of Power Systems with Large Amounts of Wind Power: State of the Art Report” – IEA Wind Report, 2007, cited by 470 articles 🌬️
“Trading Wind Generation in Short-Term Energy Markets” – IEEE Transactions on Power Systems, 2002, cited by 450 articles 💱
“Maximising Penetration of Wind Generation in Existing Distribution Networks” – IEE Proceedings – Generation, Transmission and Distribution, 2002, cited by 444 articles ⚙️
“Distribution System State Estimation Using an Artificial Neural Network Approach for Pseudo Measurement Modeling” – IEEE Transactions on Power Systems, 2012, cited by 438 articles 🧠
“Value of Bulk Energy Storage for Managing Wind Power Fluctuations” – IEEE Transactions on Energy Conversion, 2007, cited by 404 articles 🔋
“A Power System Stabilizer for DFIG-Based Wind Generation” – IEEE Transactions on Power Systems, 2006, cited by 403 articles 🌀
“Stochastic Scheduling with Inertia-Dependent Fast Frequency Response Requirements” – IEEE Transactions on Power Systems, 2016, citation count unavailable 📉

Conclusion📘

Professor Goran Strbac is a transformative figure in the global energy sector, whose innovative approaches to system modeling, digitalization, and low-carbon technology integration are shaping the path toward sustainable energy futures. His academic leadership, international collaborations, and evidence-based contributions to policymaking make him a highly deserving candidate for recognition. From advising government energy reforms to advancing cutting-edge research on hydrogen and flexibility services, his career exemplifies the critical intersection of technical rigor and practical impact. Professor Strbac continues to inspire a new generation of engineers, researchers, and policymakers striving for resilient, efficient, and net-zero energy systems.

Divya Ahluwalia – Green Energy – Best Researcher Award

Divya Ahluwalia - Green Energy - Best Researcher Award

University of Petroleum and Energy Studies - India

Dr. Divya Ahluwalia: A Scholarly Journey

Dr. Divya Ahluwalia, currently an Associate Professor in the Department of Mathematics at the University of Petroleum and Energy Studies (UPES), Dehradun, has traversed a rich and diverse academic and professional journey. Her illustrious career is marked by a deep commitment to the field of mathematics, a dedication to teaching, and notable contributions to research.

Professional Profiles:

Early Academic Pursuits:

Dr. Divya Ahluwalia's academic journey commenced with a strong foundation, culminating in a Ph.D. in Mathematics from the prestigious Indian Institute of Technology, Roorkee, in 2004. Her early academic pursuits reflected a commitment to excellence, evident in her Bachelor's degree from Ch. Charan Singh University (1994), Master's degree from H.N.B. Garhwal University (1996), and a B.Ed. from the University of Jammu (1999).

Professional Endeavors:

With more than nineteen years of teaching experience, Dr. Ahluwalia's professional endeavors have spanned across reputed educational institutions. She has contributed significantly to the academic landscape at UPES since September 2015. Prior to her current position, she held teaching roles at Bharat Institute of Technology, Meerut (Feb 2011 - Aug 2015), College of Engineering Roorkee, Roorkee (Jan 2005 - Feb 2011), and Graphic Era University, Dehradun (Aug 2003 - June 2004). Green Energy represents a sustainable and environmentally conscious approach to power generation, harnessing natural resources to meet our energy needs. This transformative concept embraces renewable sources like solar, wind, hydro, and biomass, minimizing carbon footprints and mitigating climate change

Contributions and Research Focus On Green Energy :

Dr. Ahluwalia's contributions to the field of mathematics are both profound and varied. As an Associate Professor, her focus extends beyond the classroom. Engaged in research, she brings a wealth of knowledge to the table. Her research endeavors delve into intricate mathematical problems, showcasing a passion for advancing the understanding of this discipline. Her work may include contributions to mathematical theorems, applications in real-world problem-solving, or advancements in educational methodologies.

Accolades and Recognition:

The recognition of Dr. Ahluwalia's contributions to academia is evident in her accolades. Whether through awards, fellowships, or commendations, she has earned her place as a distinguished academician. These accolades serve as a testament to her commitment to excellence in teaching and research. By adopting eco-friendly solutions, Green Energy ensures a cleaner, more sustainable future. Driven by innovation and technological advancements, this field continually pioneers clean energy technologies. Green Energy not only reduces reliance on finite fossil fuels but also fosters energy independence and resilience.

Impact and Influence:

Dr. Ahluwalia's impact extends beyond her immediate academic environment. Her influence is felt through the students she has mentored, the knowledge she has imparted, and the advancements she has catalyzed in the field of mathematics. Her commitment to nurturing the next generation of mathematicians contributes significantly to the broader impact of her work.

Legacy and Future Contributions:

Dr. Divya Ahluwalia's legacy lies in the lives she has touched, the minds she has shaped, and the advancements she has ushered in her field. Looking ahead, her future contributions are anticipated to be equally impactful. As an academician, researcher, and mentor, she continues to shape the landscape of mathematics education and research, leaving an indelible mark on the community As global initiatives prioritize sustainability, Green Energy stands at the forefront, offering a viable pathway towards a cleaner, greener planet for generations to come.

Notable Publications:

Augmenting Power Efficiency by Virtue of a Novel Physical Reconfiguration of Solar Photovoltaic Array in Tandem with Experimental Validation 2023

Boost in energy generation using robust reconfiguration: A novel scheme for photovoltaic array under realistic fractional partial shadings 2023

Performance analysis of odd-even sudoku framework for solar photovoltaic array subjected to erratic partial shading situations 2023